Check malloc/calloc return values. (#517)
Should not affect anything, but requested in http://openocd.zylin.com/#/c/5821/5/src/target/riscv/batch.c@28 Change-Id: Ib7185bd93eeb918e72872416ab6364f8776cff88
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57b57989b4
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9357818bb9
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@ -21,17 +21,43 @@ struct riscv_batch *riscv_batch_alloc(struct target *target, size_t scans, size_
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{
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scans += 4;
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struct riscv_batch *out = calloc(1, sizeof(*out));
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if (!out)
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goto error0;
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out->target = target;
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out->allocated_scans = scans;
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out->idle_count = idle;
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out->data_out = malloc(sizeof(*out->data_out) * (scans) * DMI_SCAN_BUF_SIZE);
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out->data_in = malloc(sizeof(*out->data_in) * (scans) * DMI_SCAN_BUF_SIZE);
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if (!out->data_out)
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goto error1;
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out->data_in = malloc(sizeof(*out->data_in) * (scans) * DMI_SCAN_BUF_SIZE);
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if (!out->data_in)
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goto error2;
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out->fields = malloc(sizeof(*out->fields) * (scans));
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if (bscan_tunnel_ir_width != 0)
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if (!out->fields)
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goto error3;
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if (bscan_tunnel_ir_width != 0) {
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out->bscan_ctxt = malloc(sizeof(*out->bscan_ctxt) * (scans));
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if (!out->bscan_ctxt)
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goto error4;
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}
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out->last_scan = RISCV_SCAN_TYPE_INVALID;
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out->read_keys = malloc(sizeof(*out->read_keys) * (scans));
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if (!out->read_keys)
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goto error5;
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return out;
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error5:
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free(out->bscan_ctxt);
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error4:
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free(out->fields);
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error3:
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free(out->data_in);
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error2:
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free(out->data_out);
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error1:
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free(out);
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error0:
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return NULL;
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}
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void riscv_batch_free(struct riscv_batch *batch)
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@ -39,8 +65,7 @@ void riscv_batch_free(struct riscv_batch *batch)
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free(batch->data_in);
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free(batch->data_out);
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free(batch->fields);
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if (batch->bscan_ctxt)
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free(batch->bscan_ctxt);
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free(batch->bscan_ctxt);
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free(batch->read_keys);
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free(batch);
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}
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@ -520,6 +520,8 @@ typedef struct {
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static scans_t *scans_new(struct target *target, unsigned int scan_count)
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{
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scans_t *scans = malloc(sizeof(scans_t));
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if (!scans)
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goto error0;
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scans->scan_count = scan_count;
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/* This code also gets called before xlen is detected. */
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if (riscv_xlen(target))
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@ -528,10 +530,25 @@ static scans_t *scans_new(struct target *target, unsigned int scan_count)
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scans->scan_size = 2 + 128 / 8;
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scans->next_scan = 0;
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scans->in = calloc(scans->scan_size, scans->scan_count);
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if (!scans->in)
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goto error1;
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scans->out = calloc(scans->scan_size, scans->scan_count);
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if (!scans->out)
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goto error2;
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scans->field = calloc(scans->scan_count, sizeof(struct scan_field));
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if (!scans->field)
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goto error3;
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scans->target = target;
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return scans;
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error3:
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free(scans->out);
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error2:
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free(scans->in);
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error1:
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free(scans);
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error0:
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return NULL;
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}
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static scans_t *scans_delete(scans_t *scans)
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@ -845,6 +862,8 @@ static int cache_write(struct target *target, unsigned int address, bool run)
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LOG_DEBUG("enter");
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riscv011_info_t *info = get_info(target);
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scans_t *scans = scans_new(target, info->dramsize + 2);
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if (!scans)
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return ERROR_FAIL;
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unsigned int last = info->dramsize;
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for (unsigned int i = 0; i < info->dramsize; i++) {
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@ -1584,6 +1603,8 @@ static riscv_error_t handle_halt_routine(struct target *target)
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riscv011_info_t *info = get_info(target);
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scans_t *scans = scans_new(target, 256);
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if (!scans)
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return RE_FAIL;
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/* Read all GPRs as fast as we can, because gdb is going to ask for them
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* anyway. Reading them one at a time is much slower. */
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@ -1996,6 +2017,8 @@ static int read_memory(struct target *target, target_addr_t address,
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riscv011_info_t *info = get_info(target);
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const unsigned max_batch_size = 256;
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scans_t *scans = scans_new(target, max_batch_size);
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if (!scans)
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return ERROR_FAIL;
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uint32_t result_value = 0x777;
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uint32_t i = 0;
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@ -2152,6 +2175,8 @@ static int write_memory(struct target *target, target_addr_t address,
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const unsigned max_batch_size = 256;
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scans_t *scans = scans_new(target, max_batch_size);
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if (!scans)
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return ERROR_FAIL;
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uint32_t result_value = 0x777;
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uint32_t i = 0;
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@ -265,6 +265,8 @@ dm013_info_t *get_dm(struct target *target)
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if (!dm) {
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LOG_DEBUG("[%d] Allocating new DM", target->coreid);
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dm = calloc(1, sizeof(dm013_info_t));
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if (!dm)
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return NULL;
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dm->abs_chain_position = abs_chain_position;
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dm->current_hartid = -1;
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dm->hart_count = -1;
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@ -279,6 +281,10 @@ dm013_info_t *get_dm(struct target *target)
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return dm;
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}
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target_entry = calloc(1, sizeof(*target_entry));
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if (!target_entry) {
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info->dm = NULL;
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return NULL;
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}
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target_entry->target = target;
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list_add(&target_entry->list, &dm->target_list);
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@ -1592,6 +1598,8 @@ static int examine(struct target *target)
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/* Reset the Debug Module. */
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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if (!dm->was_reset) {
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dmi_write(target, DM_DMCONTROL, 0);
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dmi_write(target, DM_DMCONTROL, DM_DMCONTROL_DMACTIVE);
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@ -1814,6 +1822,8 @@ int riscv013_authdata_write(struct target *target, uint32_t value)
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LOG_INFO("authdata_write resulted in successful authentication");
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int result = ERROR_OK;
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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target_list_t *entry;
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list_for_each_entry(entry, &dm->target_list, list) {
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if (examine(entry->target) != ERROR_OK)
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@ -1828,6 +1838,7 @@ int riscv013_authdata_write(struct target *target, uint32_t value)
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static int riscv013_hart_count(struct target *target)
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{
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dm013_info_t *dm = get_dm(target);
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assert(dm);
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return dm->hart_count;
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}
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@ -2103,6 +2114,8 @@ static int assert_reset(struct target *target)
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target->state = TARGET_RESET;
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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/* The DM might have gotten reset if OpenOCD called us in some reset that
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* involves SRST being toggled. So clear our cache which may be out of
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@ -2846,6 +2859,8 @@ static int read_memory_progbuf_inner(struct target *target, target_addr_t addres
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struct riscv_batch *batch = riscv_batch_alloc(target, 32,
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info->dmi_busy_delay + info->ac_busy_delay);
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if (!batch)
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return ERROR_FAIL;
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unsigned reads = 0;
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for (unsigned j = index; j < count; j++) {
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@ -3357,6 +3372,8 @@ static int write_memory_bus_v1(struct target *target, target_addr_t address,
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target,
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32,
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info->dmi_busy_delay + info->bus_master_write_delay);
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if (!batch)
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return ERROR_FAIL;
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for (uint32_t i = (next_address - address) / size; i < count; i++) {
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const uint8_t *p = buffer + i * size;
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@ -3528,6 +3545,8 @@ static int write_memory_progbuf(struct target *target, target_addr_t address,
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target,
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32,
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info->dmi_busy_delay + info->ac_busy_delay);
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if (!batch)
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goto error;
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/* To write another word, we put it in S1 and execute the program. */
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unsigned start = (cur_addr - address) / size;
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@ -3755,6 +3774,8 @@ static int riscv013_select_current_hart(struct target *target)
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RISCV_INFO(r);
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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if (r->current_hartid == dm->current_hartid)
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return ERROR_OK;
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@ -3773,6 +3794,8 @@ static int riscv013_select_current_hart(struct target *target)
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static int select_prepped_harts(struct target *target, bool *use_hasel)
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{
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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if (!dm->hasel_supported) {
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RISCV_INFO(r);
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r->prepped = false;
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@ -3865,6 +3888,8 @@ static int riscv013_halt_go(struct target *target)
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if (use_hasel) {
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target_list_t *entry;
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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list_for_each_entry(entry, &dm->target_list, list) {
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struct target *t = entry->target;
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t->state = TARGET_HALTED;
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@ -3970,6 +3995,8 @@ static enum riscv_halt_reason riscv013_halt_reason(struct target *target)
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int riscv013_write_debug_buffer(struct target *target, unsigned index, riscv_insn_t data)
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{
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dm013_info_t *dm = get_dm(target);
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if (!dm)
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return ERROR_FAIL;
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if (dm->progbuf_cache[index] != data) {
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if (dmi_write(target, DM_PROGBUF0 + index, data) != ERROR_OK)
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return ERROR_FAIL;
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@ -4094,6 +4121,7 @@ static int riscv013_test_sba_config_reg(struct target *target,
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}
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uint32_t num_sbdata_regs = get_num_sbdata_regs(target);
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assert(num_sbdata_regs);
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uint32_t rd_buf[num_sbdata_regs];
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@ -2371,9 +2371,10 @@ int parse_ranges(range_t **ranges, const char **argv)
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}
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if (pass == 0) {
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if (*ranges)
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free(*ranges);
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free(*ranges);
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*ranges = calloc(range + 2, sizeof(range_t));
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if (!*ranges)
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return ERROR_FAIL;
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} else {
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(*ranges)[range].low = 1;
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(*ranges)[range].high = 0;
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@ -3713,6 +3714,8 @@ int riscv_init_registers(struct target *target)
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riscv_free_registers(target);
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target->reg_cache = calloc(1, sizeof(*target->reg_cache));
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if (!target->reg_cache)
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return ERROR_FAIL;
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target->reg_cache->name = "RISC-V Registers";
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target->reg_cache->num_regs = GDB_REGNO_COUNT;
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@ -3730,12 +3733,15 @@ int riscv_init_registers(struct target *target)
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target->reg_cache->reg_list =
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calloc(target->reg_cache->num_regs, sizeof(struct reg));
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if (!target->reg_cache->reg_list)
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return ERROR_FAIL;
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const unsigned int max_reg_name_len = 12;
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if (info->reg_names)
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free(info->reg_names);
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free(info->reg_names);
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info->reg_names =
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calloc(target->reg_cache->num_regs, max_reg_name_len);
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if (!info->reg_names)
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return ERROR_FAIL;
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char *reg_name = info->reg_names;
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int hartid = riscv_current_hartid(target);
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@ -3883,6 +3889,8 @@ int riscv_init_registers(struct target *target)
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int custom_within_range = 0;
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riscv_reg_info_t *shared_reg_info = calloc(1, sizeof(riscv_reg_info_t));
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if (!shared_reg_info)
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return ERROR_FAIL;
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shared_reg_info->target = target;
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/* When gdb requests register N, gdb_get_register_packet() assumes that this
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@ -4292,7 +4300,8 @@ int riscv_init_registers(struct target *target)
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r->group = "custom";
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r->feature = &feature_custom;
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r->arch_info = calloc(1, sizeof(riscv_reg_info_t));
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assert(r->arch_info);
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if (!r->arch_info)
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return ERROR_FAIL;
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((riscv_reg_info_t *) r->arch_info)->target = target;
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((riscv_reg_info_t *) r->arch_info)->custom_number = custom_number;
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sprintf(reg_name, "custom%d", custom_number);
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